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Quorum sensing improves current output with Acidithiobacillus ferrooxidans

机译:仲裁感测可通过酸性氧化亚铁硫杆菌提高电流输出

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Summary Acidithiobacillus ferrooxidans is a strict acidophilic chemolithoautotrophic bacterium that obtains its energy from reduced inorganic sulfur species or ferrous iron oxidation under aerobic conditions. Carbon felt electrodes were pre‐colonized by A.?ferrooxidans ATCC 23270 T using ferrous iron or sulfur as electron donors, via the addition (or not) of a mixture of C14 acyl‐homoserine lactones (C14‐AHLs). Electrode coverage during pre‐colonization was sparse regardless of the electron donor source, whereas activation of quorum sensing significantly enhanced it. Microbial fuel cells (MFCs) inoculated with pre‐colonized electrodes (which behaved as biocathodes) were more efficient in terms of current production when iron was used as an electron donor. Biocathode coverage and current output were remarkably increased to ?0.56?A?m ?2 by concomitantly using iron‐based metabolism and C14‐AHLs. Cyclic voltammetry displayed different electrochemical reactions in relation to the nature of the electron donor, underlying the implication of different electron transfer mechanisms.
机译:总结酸性氧化硫硫杆菌是一种严格的嗜酸性化营养自养细菌,可在需氧条件下从还原的无机硫物质或亚铁氧化获得能量。碳毡电极由A.ferrooxidans ATCC 23270 T使用亚铁或硫作为电子供体,通过添加(或不添加)C14酰基高丝氨酸内酯(C14-AHLs)的混合物进行预定殖。不论电子供体来源如何,预殖民化期间的电极覆盖范围都很稀疏,而激活群体感应显着增强了它。当铁用作电子供体时,接种预殖民化电极(表现为生物阴极)的微生物燃料电池(MFC)在电流产生方面效率更高。通过同时使用铁基代谢和C14-AHLs,生物阴极的覆盖率和电流输出显着增加到0.56 A·m?2。循环伏安法显示出与电子给体的性质有关的不同电化学反应,这暗示了不同电子转移机制的含义。

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